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Direct and indirect studies of the gaseous charged species in surface dielectric barrier discharge in plasma actuator

机译:等离子体致动器中表面介质阻挡放电中气态带电物种的直接和间接研究

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In this paper we present results of the studies on the gaseous charged species produced in the surface dielectric barrier discharge (SDBD). In this study two experimental method were used: direct - optical emission spectroscopy of the SDBD plasma and indirect - trajectory tracking of the microparticles (previously charged by the SDBD ionic wind) travelling in the external electric field. In these experiments a SDBD actuator with an air-exposed high voltage electrode and an air-insulated grounded electrode was used to generate the surface SDBD. The spectroscopic measurements showed that the SDBD spectrum is dominated by the second positive system of N2molecules. The spectral band of the first positive of N2+, NO and OH, as well as the atomic lines of O were also identified in the SDBD spectrum. The N2+ion was identified as main positive charge carrier in the ionic wind generated by the SDBD. The results of the trajectory tracking of the microparticles revealed that in the external electric field particles undergo the effect of separation of direction of movement (they travel according or contrary to the electric field lines).
机译:在本文中,我们提出了对表面介质阻挡放电(SDBD)产生的气态带电物质的研究结果。在本研究中使用了两种实验方法:SDBD等离子体的直接光发射光谱和间接 - 在外部电场中行进的微粒(由SDBD离子风充电)的间接轨迹跟踪。在这些实验中,使用具有充足的高压电极和空气绝缘接地电极的SDBD致动器来产生表面SDBD。光谱测量表明,SDBD光谱由N的第二正系统主导 2 分子。 n的第一个阳性的光谱带 2 + ,在SDBD光谱中也鉴定出o和oh以及O的原子线。然后 2 + 将离子鉴定为由SDBD产生的离子风中的主要正电荷载体。微粒的轨迹跟踪的结果表明,在外部电场粒子中经历了运动方向的效果(它们根据电场线行进或与电场线相反)。

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